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手动和自动评分的胞质分裂阻断微核试验:校准曲线和剂量预测。

Cytokinesis-block micronucleus assay by manual and automated scoring: calibration curves and dose prediction.

机构信息

*Sezione di Immunologia e Tossicologia-Centro Studi e Ricerche di Sanità e Veterinaria, Via Santo Stefano Rotondo, 4 00184 Roma, Italy.

出版信息

Health Phys. 2014 Jun;106(6):745-9. doi: 10.1097/HP.0000000000000052.

Abstract

The cytokinesis-block micronucleus assay in peripheral blood lymphocytes is one of the best standardized and validated techniques for individual radiation dose assessment. This method has been proposed as an alternative to the dicentric chromosome assay, which is considered the "gold standard" in biological dosimetry because it requires less time and cytogenetic expertise. Nevertheless, for application as a biodosimetry tool in large-scale nuclear or radiological accidents, the manually performed cytokinesis-block micronucleus assay needs further strategies (e.g., the automation of micronucleus scoring) to speed up the analysis. An essential prerequisite for radiation dose assessment is to establish a dose-effect curve. In this study, blood samples of one healthy subject were irradiated with seven increasing doses of x-ray (240 kVp, 1 Gy min⁻¹) ranging from 0.25-4.0 Gy to generate calibration curves based on manual as well as on automated scoring mode. The quality of the calibration curves was evaluated by determination of the dose prediction accuracy after the analysis of 10 blood samples from the same donor exposed to unknown radiation doses. The micronucleus frequencies in binucleated cells were scored manually as well as automatically and were used to assess the absorbed radiation doses with reference to the respective calibration curve. The accuracy of the dose assessment based on manual and automatic scoring mode was compared.

摘要

有丝分裂阻断微核试验在人外周血淋巴细胞中的应用是个体辐射剂量评估中最成熟和最可靠的技术之一。该方法已被提议作为双着丝粒染色体分析的替代方法,因为它需要更少的时间和细胞遗传学专业知识,而后者被认为是生物剂量学的“金标准”。然而,为了将其作为大规模核或放射事故中的生物剂量学工具应用,需要进一步制定策略(例如,微核评分的自动化)来加速分析。进行辐射剂量评估的一个基本前提是建立剂量-效应曲线。在这项研究中,用 7 个递增剂量(240 kVp,1 Gy min⁻¹)的 X 射线(0.25-4.0 Gy)辐照一名健康受试者的血液样本,以生成基于手动和自动评分模式的校准曲线。通过分析来自同一供体的 10 个暴露于未知辐射剂量的血液样本,评估校准曲线分析后剂量预测的准确性来评估校准曲线的质量。手动和自动评分模式分别对双核细胞中的微核频率进行评分,并用于根据相应的校准曲线评估吸收的辐射剂量。比较了基于手动和自动评分模式的剂量评估的准确性。

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